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A NICER View of PSR J1231-1411: A Complex Case

Authors :
Salmi, Tuomo
Deneva, Julia S.
Ray, Paul S.
Watts, Anna L.
Choudhury, Devarshi
Kini, Yves
Vinciguerra, Serena
Cromartie, H. Thankful
Wolff, Michael T.
Arzoumanian, Zaven
Bogdanov, Slavko
Gendreau, Keith
Guillot, Sebastien
Ho, Wynn C. G.
Morsink, Sharon M.
Cognard, Ismael
Guillemot, Lucas
Theureau, Gilles
Kerr, Matthew
Publication Year :
2024

Abstract

Recent constraints on neutron star mass and radius have advanced our understanding of the equation of state of cold dense matter. Some of them have been obtained by modeling the pulses of three millisecond X-ray pulsars observed by the Neutron Star Interior Composition Explorer (NICER). Here, we present a Bayesian parameter inference for a fourth pulsar, PSR J1231-1411, using the same technique with NICER and XMM-Newton data. When applying a broad mass-inclination prior from radio timing measurements and the emission region geometry model that can best explain the data, we find likely-converged results only when using a limited radius prior. If limiting the radius to be consistent with the previous observational constraints and equation of state analyses, we infer the radius to be $12.6 \pm 0.3$ km and the mass to be $1.04_{-0.03}^{+0.05}$ $M_\odot$, each reported as the posterior credible interval bounded by the $16\,\%$ and $84\,\%$ quantiles. If using an uninformative prior but limited between $10$ and $14$ km, we find otherwise similar results, but $R_{\mathrm{eq}} = 13.5_{-0.5}^{+0.3}$ km for the radius. In both cases, we find a non-antipodal hot region geometry where one emitting spot is at the equator or slightly above, surrounded by a large colder region, and where a non-circular hot region lies close to southern rotational pole. If using a wider radius prior, we only find solutions that fit the data significantly worse. We discuss the challenges in finding the better fitting solutions, possibly related to the weak interpulse feature in the pulse profile.<br />Comment: 22 pages, 13 figures (2 of which are figure sets), 3 tables, accepted for publication in ApJ

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2409.14923
Document Type :
Working Paper